bioRxiv · 10.1101/424945
High-throughput targeted long-read single cell sequencing reveals the clonal and transcriptional landscape of lymphocytes
Abstract
High-throughput single-cell RNA-Sequencing is a powerful technique for gene expression profiling of complex and heterogeneous cellular populations such as the immune system. However, these methods only provide short-read sequence from one end of a cDNA template, making them poorly suited to the investigation of gene-regulatory events such as mRNA splicing, adaptive immune responses or somatic genome evolution. To address this challenge, we have developed a method that combines targeted long-read sequencing with short-read based transcriptome profiling of barcoded single cell libraries generated by droplet-based partitioning. We use Repertoire And Gene Expression sequencing (RAGE-seq) to accurately characterize full-length T cell (TCR) and B cell (BCR) receptor sequences and transcriptional profiles of more than 7,138 lymphocytes sampled from the primary tumour and draining lymph node of a breast cancer patient. With this method we show that somatic mutation, alternate splicing and clonal evolution of T and B lymphocytes can be tracked across these tissue compartments. Our results demonstrate that RAGE-Seq is an accessible and cost-effective method for high-throughput deep single cell profiling, applicable to a wide range of biological challenges.
Source connections
Explore related subjects
Keep this discovery
Singh, M., Al-Eryani, G., Carswell, S., Ferguson, J. M., Blackburn, J., Barton, K., Roden, D., Luciani, F., Phan, T., Junankar, S., Jackson, K., Goodnow, C. C., Smith, M. A., Swarbrick, A.. 2018-09-24. High-throughput targeted long-read single cell sequencing reveals the clonal and transcriptional landscape of lymphocytes. https://doi.org/10.1101/424945
Cite the original work for its findings. Save a collection to share your selection of sources.